Mei Sun , Ana Carolina Acosta , Victoria Emerick , Sheila Adams , Marcel Y Avila , Curtis E Margo , Edgar M Espana
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引用次数: 0
摘要
典型埃勒斯-丹洛斯综合征(cEDS)患者的伤口愈合能力受损,受伤后形成的疤痕萎缩且难以通过手术缝合。COL5A1单倍体缺陷会导致全身形态和功能改变。我们研究了cEDS(Col5a1+/-)小鼠模型中影响角膜裂伤(全厚损伤)伤口愈合的机制。我们发现,在该模型中,胶原蛋白 V 的再表达在角膜组织修复过程中上调,伤口愈合延迟、受损,并导致大面积萎缩性角膜疤痕。我们注意到,在胶原蛋白 V 含量为 50% 的基质中,潜伏的转化生长因子 (TGF) β 的激活失调。二次谐波成像显微镜显示,在我们的 Col5a1+/- 模型中,胶原基质变得杂乱、起伏和致密,这表明细胞外基质的结构和功能发生了改变。我们推测,再生的胶原基质中胶原 V 的含量仅为 50%,机械抵抗力不足,无法充分激活成纤维细胞和肌成纤维细胞潜伏的 TGF β。
Dysfunctional latent transforming growth factor β activation after corneal injury in a classical Ehlers–Danlos model
Patients with classical Ehlers Danlos syndrome (cEDS) suffer impaired wound healing and from scars formed after injuries that are atrophic and difficult to close surgically. Haploinsufficiency in COL5A1 creates systemic morphological and functional alterations in the entire body. We investigated mechanisms that impair wound healing from corneal lacerations (full thickness injuries) in a mouse model of cEDS (Col5a1+/−). We found that collagen V reexpression in this model is upregulated during corneal tissue repair and that wound healing is delayed, impaired, and results in large atrophic corneal scars. We noted that in a matrix with a 50 % content of collagen V, activation of latent Transforming Growth Factor (TGF) β is dysregulated. Corneal myofibroblasts with a haploinsufficiency of collagen V failed to mechanically activate latent TGF β. Second harmonic imaging microscopy showed a disorganized, undulated, and denser collagen matrix in our Col5a1+/- model that suggested alterations in the extracellular matrix structure and function. We hypothesize that a regenerated collagen matrix with only 50 % content of collagen V is not resistant enough mechanically to allow adequate activation of latent TGF β by fibroblasts and myofibroblasts.
期刊介绍:
Matrix Biology (established in 1980 as Collagen and Related Research) is a cutting-edge journal that is devoted to publishing the latest results in matrix biology research. We welcome articles that reside at the nexus of understanding the cellular and molecular pathophysiology of the extracellular matrix. Matrix Biology focusses on solving elusive questions, opening new avenues of thought and discovery, and challenging longstanding biological paradigms.